Laboratorio de Genética Molecular, Desarrollo y Evolución de Plantas, Departamento de Ecología Funcional, Instituto de Ecología, Universidad Nacional Autónoma de México, Tercer Circuito Exterior, Ciudad Universitaria, D.F. Mexico 04510, Mexico.
Plant Cell. 2010 Nov;22(11):3543-59. doi: 10.1105/tpc.109.069153. Epub 2010 Nov 30.
Spontaneous homeotic transformations have been described in natural populations of both plants and animals, but little is known about the molecular-genetic mechanisms underlying these processes in plants. In the ABC model of floral organ identity in Arabidopsis thaliana, the B- and C-functions are necessary for stamen morphogenesis, and C alone is required for carpel identity. We provide ABC model-based molecular-genetic evidence that explains the unique inside-out homeotic floral organ arrangement of the monocotyledonous mycoheterotroph species Lacandonia schismatica (Triuridaceae) from Mexico. Whereas a quarter million flowering plant species bear central carpels surrounded by stamens, L. schismatica stamens occur in the center of the flower and are surrounded by carpels. The simplest explanation for this is that the B-function is displaced toward the flower center. Our analyses of the spatio-temporal pattern of B- and C-function gene expression are consistent with this hypothesis. The hypothesis is further supported by conservation between the B-function genes of L. schismatica and Arabidopsis, as the former are able to rescue stamens in Arabidopsis transgenic complementation lines, and Ls-AP3 and Ls-PI are able to interact with each other and with the corresponding Arabidopsis B-function proteins in yeast. Thus, relatively simple molecular modifications may underlie important morphological shifts in natural populations of extant plant taxa.
自发性同型异位转化在植物和动物的自然种群中都有描述,但对于这些过程在植物中的分子遗传机制知之甚少。在拟南芥花器官身份的 ABC 模型中,B 和 C 功能对于雄蕊形态发生是必需的,而 C 功能单独对于心皮身份是必需的。我们提供了基于 ABC 模型的分子遗传证据,解释了来自墨西哥的单子叶菌根异养植物种 Lacandonia schismatica(三蕊科)独特的内向外同源花器官排列。虽然有四分之一百万的开花植物物种具有中央心皮,周围环绕着雄蕊,但 L. schismatica 的雄蕊位于花的中心,周围是心皮。最简单的解释是 B 功能被推向花的中心。我们对 B 和 C 功能基因表达的时空模式的分析与这一假设一致。这一假设还得到了 L. schismatica 和拟南芥 B 功能基因之间保守性的支持,因为前者能够在拟南芥转基因互补系中拯救雄蕊,并且 Ls-AP3 和 Ls-PI 能够在酵母中相互作用,并与相应的拟南芥 B 功能蛋白相互作用。因此,相对简单的分子修饰可能是现存植物类群自然种群中重要形态变化的基础。